Search Results - "Astoul, Aurélie"

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  1. 1

    On the interaction between fast tides and convection by Barker, Adrian J, Astoul, Aurélie A V

    “…ABSTRACT The interaction between equilibrium tides and convection in stellar envelopes is often considered important for tidal evolution in close binary and…”
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    Journal Article
  2. 2

    Tidally Excited Inertial Waves in Stars and Planets: Exploring the Frequency-dependent and Averaged Dissipation with Nonlinear Simulations by Astoul, Aurélie, Barker, Adrian J.

    Published in Astrophysical journal. Letters (01-09-2023)
    “…We simulate the nonlinear hydrodynamical evolution of tidally excited inertial waves in convective envelopes of rotating stars and giant planets modeled as…”
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    Journal Article
  3. 3

    Tidal dissipation in rotating and evolving giant planets with application to exoplanet systems by Lazovik, Yaroslav A, Barker, Adrian J, de Vries, Nils B, Astoul, Aurélie

    “…ABSTRACT We study tidal dissipation in models of rotating giant planets with masses in the range 0.1–10MJ throughout their evolution. Our models incorporate a…”
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    Journal Article
  4. 4

    On the interaction between fast tides and convection by Barker, Adrian J, Astoul, Aurélie A. V

    Published 06-07-2021
    “…The interaction between equilibrium tides and convection in stellar envelopes is often considered important for tidal evolution in close binary and extrasolar…”
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    Journal Article
  5. 5

    Interactions between tidal flows and magnetic fields in stellar/planetary convective envelopes by Astoul, Aurélie, Barker, Adrian J

    Published 25-11-2024
    “…Stars and gaseous planets are magnetised objects but the influence of magnetic fields on their tidal responses and dissipation rates has not been well…”
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    Journal Article
  6. 6

    Do nonlinear effects disrupt tidal dissipation predictions in convective envelopes? by Astoul, Aurélie, Barker, Adrian J

    Published 04-10-2023
    “…Most prior works studying tidal interactions in tight star/planet or star/star binary systems have employed linear theory of a viscous fluid in a…”
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    Journal Article
  7. 7

    Tidally-excited inertial waves in stars and planets: exploring the frequency-dependent and averaged dissipation with nonlinear simulations by Astoul, Aurélie, Barker, Adrian J

    Published 05-09-2023
    “…We simulate the nonlinear hydrodynamical evolution of tidally-excited inertial waves in convective envelopes of rotating stars and giant planets modelled as…”
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    Journal Article
  8. 8

    How do tidal waves interact with convective vortices in rapidly-rotating planets and stars? by Dandoy, Virgile, Park, Junho, Augustson, Kyle, Astoul, Aurélie, Mathis, Stéphane

    Published 08-03-2023
    “…A&A 673, A6 (2023) The dissipation of tidal inertial waves in planetary and stellar convective regions is one of the key mechanisms that drive the evolution of…”
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    Journal Article
  9. 9

    Tidal dissipation in rotating and evolving giant planets with application to exoplanet systems by Lazovik, Yaroslav A, Barker, Adrian J, de Vries, Nils B, Astoul, Aurélie

    Published 27-11-2023
    “…We study tidal dissipation in models of rotating giant planets with masses in the range $0.1 - 10 M_\mathrm{J}$ throughout their evolution. Our models…”
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    Journal Article
  10. 10

    Hydrodynamic modelling of dynamical tides dissipation in Jupiter's interior as revealed by Juno by Dhouib, Hachem, Baruteau, Clément, Mathis, Stéphane, Debras, Florian, Astoul, Aurélie, Rieutord, Michel

    Published 06-11-2023
    “…The Juno spacecraft has acquired exceptionally precise data on Jupiter's gravity field, offering invaluable insights into Jupiter's tidal response, interior…”
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    Journal Article
  11. 11

    Hydrodynamical modelling of tidal dissipation in gas giant planets at the time of space missions by Dhouib, Hachem, Baruteau, Clément, Mathis, Stéphane, Debras, Florian, Astoul, Aurélie, Rieutord, Michel

    Published 02-10-2023
    “…Gas giant planets are differentially rotating magnetic objects that have strong and complex interactions with their environment. In our Solar system, they…”
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    Journal Article
  12. 12

    Does magnetic field modify tidal dynamics in the convective envelope of Solar mass stars? by Astoul, Aurélie, Mathis, Stéphane, Baruteau, Clément, Gallet, Florian, Augustson, Kyle C, Bolmont, Emeline, Brun, Allan S, Strugarek, Antoine

    Published 21-11-2018
    “…The energy dissipation of wave-like tidal flows in the convective envelope of low-mass stars is one of the key physical mechanisms that shape the orbital and…”
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    Journal Article